Search results for "synaptic vesicle"

showing 10 items of 52 documents

Synaptic release of zinc from brain slices: factors governing release, imaging, and accurate calculation of concentration.

2006

Cerebrocortical neurons that store and release zinc synaptically are widely recognized as critical in maintenance of cortical excitability and in certain forms of brain injury and disease. Through the last 20 years, this synaptic release has been observed directly or indirectly and reported in more than a score of publications from over a dozen laboratories in eight countries. However, the concentration of zinc released synaptically has not been established with final certainty. In the present work we have considered six aspects of the methods for studying release that can affect the magnitude of zinc release, the imaging of the release, and the calculated concentration of released zinc. We…

Diagnostic ImagingPyridinesColoring agentschemistry.chemical_elementZincIn Vitro TechniquesRats Sprague-DawleyPregnancyAnimalsAcido edeticoPolycyclic CompoundsRats WistarColoring AgentsEdetic AcidFluorescent DyesNeuronsExtramuralChemistryGeneral NeuroscienceTemperatureBrainOriginal dataRatsSprague dawleyZincDentate GyrusMossy Fibers HippocampalSynapsesFemaleSynaptic VesiclesNeuroscienceJournal of neuroscience methods
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Separation of presynaptic Cav2 and Cav1 channel function in synaptic vesicle exo- and endocytosis by the membrane anchored Ca2+ pump PMCA

2021

Significance Synaptic vesicle (SV) release from presynaptic terminals requires nanometer precise control of action potential (AP)–triggered calcium influx through voltage-gated calcium channels (VGCCs). SV recycling also depends on calcium signals, though in different spatiotemporal domains. Mechanisms for separate control of SV release and recycling by AP-triggered calcium influx remain elusive. Here, we demonstrate largely independent regulation of release and recycling by two different populations of VGCCs (Cav2, Cav1), identify Cav1 as one of potentially multiple calcium entry routes for endocytosis regulation, and show functional separation of simultaneous calcium signals in the nanome…

Drosophila ; Dmca1D ; cacophony ; PMCA ; synapse0301 basic medicine570ATPasecacophonyPresynaptic TerminalsAction PotentialsEndocytosisDmca1DSynaptic vesicleExocytosis03 medical and health scienceschemistry.chemical_compoundGlutamatergicPlasma Membrane Calcium-Transporting ATPases0302 clinical medicinePMCAsynapsemedicineAnimalsDrosophila ProteinsAxonNeurotransmitterProbabilityMotor NeuronsMultidisciplinaryVoltage-dependent calcium channelbiologyCell Membrane424500 Naturwissenschaften und Mathematik::570 Biowissenschaften; Biologie::570 Biowissenschaften; BiologieBiological SciencesEndocytosisCell biologyElectrophysiology030104 developmental biologymedicine.anatomical_structureDrosophila melanogasterchemistryReceptors Glutamatebiology.proteinDrosophilaCalciumCalcium ChannelsSynaptic Vesicles030217 neurology & neurosurgeryNeuroscienceProceedings of the National Academy of Sciences of the United States of America
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Cholesterol binds to synaptophysin and is required for biogenesis of synaptic vesicles.

1999

Here, to study lipid-protein interactions that contribute to the biogenesis of regulated secretory vesicles, we have developed new approaches by which to label proteins in vivo, using photoactivatable cholesterol and glycerophospholipids. We identify synaptophysin as a major specifically cholesterol-binding protein in PC12 cells and brain synaptic vesicles. Limited cholesterol depletion, which has little effect on total endocytic activity, blocks the biogenesis of synaptic-like microvesicles (SLMVs) from the plasma membrane. We propose that specific interactions between cholesterol and SLMV membrane proteins, such as synaptophysin, contribute to both the segregation of SLMV membrane constit…

Endocytic cycleSynaptophysinKidneyTritiumSynaptic vesiclePC12 CellsExocytosisR-SNARE ProteinsAnimalsHumansNeuronsVAMP2biologyCell MembraneMembrane ProteinsCell BiologySecretory VesicleMicrovesiclesEndocytosisCell biologyRatsCholesterolMembrane proteinSynaptophysinbiology.proteinPhosphatidylcholinesSynaptic VesiclesBiogenesisSynaptosomesNature cell biology
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Proper synaptic vesicle formation and neuronal network activity critically rely on syndapin I

2011

Synaptic transmission relies on effective and accurate compensatory endocytosis. F-BAR proteins may serve as membrane curvature sensors and/or inducers and thereby support membrane remodelling processes; yet, their in vivo functions urgently await disclosure. We demonstrate that the F-BAR protein syndapin I is crucial for proper brain function. Syndapin I knockout (KO) mice suffer from seizures, a phenotype consistent with excessive hippocampal network activity. Loss of syndapin I causes defects in presynaptic membrane trafficking processes, which are especially evident under high-capacity retrieval conditions, accumulation of endocytic intermediates, loss of synaptic vesicle (SV) size cont…

General Immunology and MicrobiologyGeneral NeuroscienceEndocytic cycleBiologyNeurotransmissionEndocytosisActin cytoskeletonSynaptic vesicleGeneral Biochemistry Genetics and Molecular BiologyBulk endocytosisCell biologyMolecular BiologyDynaminMembrane invaginationThe EMBO Journal
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Reduction in the Motoneuron Inhibitory/Excitatory Synaptic Ratio in an Early-Symptomatic Mouse Model of Amyotrophic Lateral Sclerosis

2010

Excitotoxicity is a widely studied mechanism underlying motoneuron degeneration in amyotrophic lateral sclerosis (ALS). Synaptic alterations that produce an imbalance in the ratio of inhibitory/excitatory synapses are expected to promote or protect against motoneuron excitotoxicity. In ALS patients, motoneurons suffer a reduction in their synaptic coverage, as in the transition from the presymptomatic (2-month-old) to early-symptomatic (3-month-old) stage of the hSOD1(G93A) mouse model of familial ALS. Net synapse loss resulted from inhibitory bouton loss and excitatory synapse gain. Furthermore, in 3-month-old transgenic mice, remaining inhibitory but not excitatory boutons attached to mot…

General NeurosciencefungiExcitotoxicityBiologyInhibitory postsynaptic potentialmedicine.diseasemedicine.disease_causeSynaptic vesiclePathology and Forensic MedicineSynapseExcitatory synapsenervous systemmedicineExcitatory postsynaptic potentialNeurology (clinical)Active zoneAmyotrophic lateral sclerosisNeuroscienceBrain Pathology
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Zinc-positive boutons in the cerebral cortex of lizards show glutamate immunoreactivity

1991

Zinc-positive boutons, originating in the medial cortex of lizards, exhibit glutamate immunoreactivity. This finding supports the presumed homology between lizard zinc-positive boutons and the hippocampal mossy fibres of mammals, which are also glutamate-immunoreactive and zinc-positive. Zinc-positive boutons of lizards contain a chelatable pool of zinc located in the hippocampal mossy fibres of mammals. These synaptic systems also contain glutamate, which indicates a possible simultaneous action of zinc and glutamate during synaptic transmission.

HistologyMedial cortexCentral nervous systemHippocampal formationHippocampusPodarcis hispanicaSynaptic vesicleGlutamatesbiology.animalmental disordersparasitic diseasesmedicineAnimalsCerebral CortexStaining and LabelingbiologyLizardGeneral NeurosciencefungiGlutamate receptorAntibodies MonoclonalLizardsCell BiologyAnatomybiology.organism_classificationZincmedicine.anatomical_structurenervous systemCerebral cortexSynapsesSynaptic Vesiclessense organsAnatomyJournal of Neurocytology
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Timm-staining intensity is correlated with the density of Timm-positive presynaptic structures in the cerebral cortex of lizards

1987

In cortical areas of the lizard, Podarcis hispanica, Timm staining reveals a distinct pattern of lamination. At the electron-microscope level, virtually all of the reaction product is located in the synaptic vesicles of Timm-positive boutons. Using linear-regression analysis, the area density of Timm-positive bouton profiles as well as the numerical and volume density of stained vesicles were found to be closely correlated with the light-microscopic densitometric values obtained for each Timm-positive cortical zone. We discuss the possibility of estimating stereological electron-microscopic data parameters from densitometric measurements at the light-microscope level.

HistologyPodarcis hispanicaSynaptic vesicleTimm stainingmedicineAnimalsMolecular BiologyCerebral CortexStaining and LabelingbiologyVesicleLizardsCell BiologyGeneral MedicineAnatomybiology.organism_classificationIntensity (physics)Reaction productMicroscopy ElectronMedical Laboratory Technologymedicine.anatomical_structureCerebral cortexUltrastructureRegression AnalysisSynaptic VesiclesAnatomyGeneral Agricultural and Biological SciencesDensitometryHistochemistry
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Anti-B-50 (GAP-43) antibodies decrease exocytosis of glutamate in permeated synaptosomes.

1999

Abstract The involvement of the protein kinase C substrate, B-50 (GAP-43), in the release of glutamate from small clear-cored vesicles in streptolysin-O-permeated synaptosomes was studied by using anti-B-50 antibodies. Glutamate release was induced from endogenous as well as 3 H -labelled pools in a [Ca2+]-dependent manner. This Ca2+-induced release was partially ATP dependent and blocked by the light-chain fragment of tetanus toxin, demonstrating its vesicular nature. Comparison of the effects of anti-B-50 antibodies on glutamate and noradrenaline release from permeated synaptosomes revealed two major differences. Firstly, Ca2+-induced glutamate release was decreased only partially by anti…

MaleGlutamic AcidBiologyIn Vitro TechniquesSynaptic vesicleExocytosisExocytosischemistry.chemical_compoundNorepinephrineAdenosine TriphosphateGAP-43 ProteinAnimalsEnzyme InhibitorsRats WistarNeurotransmitterProtein kinase CProtein Kinase CPharmacologySynaptosomeVesicleGlutamate receptorAntibodies MonoclonalIntracellular MembranesRatschemistryBiochemistryStreptolysinsBiophysicsLiberationCalciumSynaptosomesEuropean journal of pharmacology
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Isolation of Cholinergic Synaptic Vesicles from the Myenteric Plexus of Guinea-Pig Small Intestine

1980

The acetylcholine-rich myenteric plexus-longitudinal muscle preparation of the guinea-pig small intestine has been subjected to subcellular fractionation using modifications of both classical methods and that originally devised for bulk isolation of cholinergic synaptic vesicles from the electromotor nerve terminals of Torpedo marmorata by means of density gradient centrifugation in a zonal rotor. The latter method gave a vesicle fraction with the highest acetylcholine content so far recorded for a mammalian particulate fraction, 30.9 +/- S.E.M. 1.8 (5) nmol of acetylcholine . mg of protein-1. Electron-microscopical examination showed that it consisted of a homogeneous preparation of vesicl…

MaleGuinea PigsMyenteric PlexusBiologyCell FractionationBiochemistrySynaptic vesiclelaw.inventionCellular and Molecular NeurosciencelawIntestine SmallMyosinCentrifugation Density GradientmedicineAnimalsMyenteric plexusVesicleAcetylcholineMicroscopy ElectronBiochemistryBiophysicsCholinergicFemaleSynaptic VesiclesCell fractionationAcetylcholineTorpedomedicine.drugJournal of Neurochemistry
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Ribbon synapses of the mammalian retina contain two types of synaptic bodies--ribbons and spheres.

1989

The present paper reports that the synaptic bodies of the retinal ribbon synapses in rat, guinea pig, golden hamster and mouse are a heterogeneous population of organelles. In addition to the well-known synaptic ribbons sensu stricto which consist of a platelike electron-dense central structure surrounded by electron-lucent synaptic vesicles, there are what is termed synaptic spheres, in which the core is not platelike, but round to oval. In rat retinae procured at day, ribbons outnumbered spheres by a factor of 4. At night spheres were not seen in photoreceptor cells. Spheres, like ribbons, may lie some distance from the synaptic site, perhaps indicating transit from their site of origin t…

MaleHistologyGuinea PigsBiologyRibbon synapseSynaptic vesiclePhotoreceptor cellRetinaSynapseMiceBipolar neuronCricetinaeOrganellemedicineAnimalsPhotoreceptor CellsMammalsRetinaGeneral NeuroscienceRats Inbred StrainsCell BiologyCircadian RhythmRatsMicroscopy Electronmedicine.anatomical_structureSynapsesUltrastructureBiophysicssense organsAnatomyNeuroscienceJournal of neurocytology
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